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A Caenorhabditis elegans RNA-directed RNA polymerase in sperm development and endogenous RNA interference.

机译:秀丽隐杆线虫RNA指导RNA聚合酶在精子发育和内源性RNA干扰。

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Short interfering RNAs (siRNAs) are a class of regulatory effectors that enforce gene silencing through formation of RNA duplexes. Although progress has been made in identifying the capabilities of siRNAs in silencing foreign RNA and transposable elements, siRNA functions in endogenous gene regulation have remained mysterious. In certain organisms, siRNA biosynthesis involves novel enzymes that act as RNA-directed RNA polymerases (RdRPs). Here we analyze the function of a Caenorhabditis elegans RdRP, RRF-3, during spermatogenesis. We found that loss of RRF-3 function resulted in pleiotropic defects in sperm development and that sperm defects led to embryonic lethality. Notably, sperm nuclei in mutants of either rrf-3 or another component of the siRNA pathway, eri-1, were frequently surrounded by ectopic microtubule structures, with spindle abnormalities in a subset of the resulting embryos. Through high-throughput small RNA sequencing, we identified a population of cellular mRNAs from spermatogenic cells that appear to serve as templates for antisense siRNA synthesis. This set of genes includes the majority of genes known to have enriched expression during spermatogenesis, as well as many genes not previously known to be expressed during spermatogenesis. In a subset of these genes, we found that RRF-3 was required for effective siRNA accumulation. These and other data suggest a working model in which a major role of the RRF-3/ERI pathway is to generate siRNAs that set patterns of gene expression through feedback repression of a set of critical targets during spermatogenesis.
机译:短干扰RNA(siRNA)是一类调节效应子,可通过RNA双链体的形成来增强基因沉默。尽管在鉴定siRNA沉默外源RNA和转座因子的能力方面已取得进展,但是siRNA在内源基因调控中的功能仍然是个谜。在某些生物中,siRNA生物合成涉及充当RNA定向RNA聚合酶(RdRP)的新型酶。在这里,我们分析了秀丽隐杆线虫RdRP,RRF-3在生精过程中的功能。我们发现,RRF-3功能的丧失导致精子发育中的多效性缺陷,并且精子缺陷导致胚胎致死率。值得注意的是,rrf-3或siRNA途径的另一成分eri-1的突变体中的精子核经常被异位微管结构包围,并且在部分所得胚胎中出现纺锤体异常。通过高通量小RNA测序,我们从生精细胞中鉴定了一些细胞mRNA,这些细胞似乎可以用作反义siRNA合成的模板。这组基因包括大多数已知在精子发生过程中表达丰富的基因,以及许多以前未知的在精子发生过程中表达的基因。在这些基因的一个子集中,我们发现有效的siRNA积累需要RRF-3。这些和其他数据表明了一种工作模型,其中RRF-3 / ERI途径的主要作用是产生siRNA,这些siRNA通过精子发生过程中一系列关键靶点的反馈抑制来设置基因表达模式。

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